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        廣西河八王種質(zhì)資源考察收集與鑒定評(píng)價(jià)

        2025-01-12 00:00:00宗文一張保青張革民黃玉新楊翠芳周珊高軼靜熊發(fā)前劉菁陸衫羽楊細(xì)平段維興
        熱帶作物學(xué)報(bào) 2025年1期
        關(guān)鍵詞:錘度類群甘蔗

        摘""要:廣西地跨南亞熱帶和中亞熱帶,北回歸線橫貫中部,屬亞熱帶季風(fēng)氣候區(qū),孕育了豐富的野生甘蔗種質(zhì)資源。2016—2023年,廣西農(nóng)業(yè)科學(xué)院甘蔗研究所組織考察隊(duì)對(duì)廣西河八王種質(zhì)資源開(kāi)展系統(tǒng)調(diào)查和收集工作,考察隊(duì)在廣西8個(gè)地級(jí)市18個(gè)縣(市、區(qū))43個(gè)鄉(xiāng)鎮(zhèn)共收集到河八王種質(zhì)資源58份。調(diào)查結(jié)果表明:廣西河八王種質(zhì)資源主要分布在海拔60.0~602.5"m,北緯23°08′02″~26°01′43″,東經(jīng)107°08′01″~111°32′02″的區(qū)域;廣西河八王種質(zhì)資源20個(gè)描述型質(zhì)量性狀的遺傳多樣性指數(shù)在0~1.2044之間,平均值為0.5557,其中曝光后節(jié)間顏色的多樣性最高,木栓較低,而莖形、氣根、水裂3個(gè)性狀無(wú)多樣性體現(xiàn);不同收集地區(qū)的廣西河八王種質(zhì)資源遺傳多樣性指數(shù)在0.1040~0.4911之間,賀州最高,百色最低;廣西河八王種質(zhì)資源表型性狀變異豐富,6個(gè)數(shù)量性狀的變異系數(shù)為17.3%~53.6%,平均為34.8%;不同收集地區(qū)的廣西河八王種質(zhì)資源變異系數(shù)在29.4%~36.9%之間,河池最大,桂林最小。聚類分析結(jié)果顯示,58份廣西河八王種質(zhì)資源被分為六大類,與地理來(lái)源無(wú)密切關(guān)系,其中第Ⅰ類群中的材料綜合性狀較好,生物量和品質(zhì)性狀優(yōu)良。本次考察收集擴(kuò)充了廣西甘蔗種質(zhì)資源圃的資源數(shù)量,為甘蔗育種和遺傳改良提供了優(yōu)良基因資源。

        關(guān)鍵詞:河八王;甘蔗;種質(zhì)資源;表型性狀;鑒定評(píng)價(jià);遺傳多樣性中圖分類號(hào):S566.1""""""文獻(xiàn)標(biāo)志碼:A

        Collection,"Identification"and"Evaluation"of"Narenga"porphyrocoma"Germplasm"Resources"in"Guangxi

        ZONG"Wenyi1,2,"ZHANG"Baoqing1,"ZHANG"Gemin1,"HUANG"Yuxin1,"YANG"Cuifang1,"ZHOU"Shan1,"GAO"Yijing1,"XIONG"Faqian1,"LIU"Jing1,"LU"Shanyu1,"YANG"Xiping2*,"DUAN"Weixing1*

        1."Sugarcane"Research"Institute,"Guangxi"Academy"of"Agricultural"Sciences"/"Guangxi"Key"Laboratory"of"Sugarcane"Genetic"Improvement"/"Key"Laboratory"of"Sugarcane"Biotechnology"and"Genetic"Improvement"(Guangxi),"Ministry"of"Agriculture"and"Rural"Affairs,"Nanning,"Guangxi"530007,"China;"2."College"of"Agriculture,"Guangxi"University,"Nanning,"Guangxi"530004,"China

        Abstract:"Guangxi"spans"the"southern"subtropics"and"central"subtropics,"with"the"Tropic"of"Cancer"crossing"the"central"part"of"thenbsp;province,"and"belongs"to"the"subtropical"monsoon"climate"zone,"which"breeds"rich"wild"sugarcane"germplasm"resources."From"2016"to"2023,"Sugarcane"Research"Institute,"Guangxi"Academy"of"Agricultural"Sciences"organized"a"team"of"researchers"to"carry"out"systematic"surveys"and"collection"of"Narenga"porphyrocoma"germplasm"resources"in"Guangxi."The"team"collected"a"total"of"58"copies"of"N."porphyrocoma"germplasm"resources"in"43"townships"of"18"cities"and"districts"in"Guangxi."The"results"showed"that"the"N."porphyrocoma"germplasm"resources"in"Guangxi"were"mainly"distributed"in"the"area"of"60.0?602.5"m"above"sea"level,"longitude"E:"107°08′01″?111°32′02″,"latitude"N:"23°08′02″?26°01′43″."The"genetic"diversity"indices"of"the"20"descriptive"quality"traits"of"N."porphyrocoma"germplasm"resources"in"Guangxi"ranged"from"0"to"1.2044,"with"a"mean"value"of"0.5557,"in"which"the"diversity"of"the"color"of"the"internodes"after"exposure"was"the"highest,"that"of"the"cork"was"lower,"and"the"diversity"of"the"three"traits"of"stem"shape,"aerial"roots"and"water"splitting"was"not"reflected;"the"genetic"diversity"indices"of"N."porphyrocoma"germplasm"resources"in"Guangxi"of"the"different"collection"areas"ranged"from"0.1040"to"0.4911,"with"Hezhou"being"the"highest"and"Baise"being"the"lowest."The"phenotypic"traits"of"N."porphyrocoma"germplasm"resources"in"Guangxi"were"rich"in"variation,"and"the"coefficients"of"variation"for"six"quantitative"traits"ranged"from"17.3%"to"53.6%,"with"an"average"of"34.8%;"the"coefficients"of"variation"of"N."porphyrocoma"germplasm"resources"in"Guangxi"from"different"collection"areas"ranged"from"29.4%"to"36.9%,"with"Hechi"being"the"largest"and"Guilin"being"the"smallest."The"results"of"cluster"analysis"showed"that"the"58"N."porphyrocoma"germplasm"resources"in"Guangxi"were"classified"into"six"major"groups,"but"were"not"closely"related"to"the"geographical"origin,"in"which"the"materials"in"the"first"major"group"had"better"overall"traits"and"excellent"biomass"and"quality"traits."The"collection"expanded"the"number"of"resources"in"Guangxi"Sugarcane"Germplasm"Repository"and"would"provide"excellent"genetic"resources"for"sugarcane"breeding"and"genetic"improvement.

        Keywords:"Narenga"porphyrocoma;"sugarcane;"germplasm"resources;"phenotypic"traits;"identification"and"evaluation;"genetic"diversity

        DOI:"10.3969/j.issn.1000-2561.2025.01.010

        種質(zhì)資源是甘蔗育種的物質(zhì)基礎(chǔ),甘蔗種質(zhì)改良和突破性育種所取得的巨大成就主要依賴于種質(zhì)資源的發(fā)掘和利用程度[1],大量甘蔗種質(zhì)材料的保育、開(kāi)發(fā)研究為培育新的優(yōu)異商業(yè)品種提供了良好的遺傳材料。河八王[Narenga"porphyrocoma"(Hance)"Bor]又名草鞋密,是禾本科甘蔗亞族河八王屬的多年生植物,染色體數(shù)2n=30,主要分布在我國(guó)江蘇、江西、廣東、廣西、四川等?。▍^(qū))[2],具有耐旱耐瘠、分蘗力強(qiáng)、抗黑穗病、抗赤腐病等優(yōu)良性狀,是甘蔗抗黑穗病育種良好基因源材料。河八王須根堅(jiān)韌粗壯,具有防風(fēng)固沙和減少水土流失的作用[3]。河八王具有優(yōu)秀的固氮能力,是氮高效利用的重要材料[4]。河八王纖維素含量高,生物質(zhì)產(chǎn)量大,具有較高的生物質(zhì)能轉(zhuǎn)化潛力,是一種潛在的能源植物[5]。李海碧等[6]通過(guò)對(duì)河八王轉(zhuǎn)錄組研究發(fā)現(xiàn),河八王轉(zhuǎn)錄組具有豐富的SSR和SNP位點(diǎn),具有較高的遺傳多態(tài)性。劉昔輝等[7]利用AFLP標(biāo)記對(duì)15份廣西河八王進(jìn)行遺傳多樣性分析,結(jié)果顯示河八王無(wú)性系的聚類與地域有一定程度的關(guān)系。段維興等[8-10]通過(guò)甘蔗與河八王雜交獲得F1和BC1代的抗黑穗病甘蔗親本,探明了雜交后代F1、BC1、BC2的染色體遺傳方式。以上研究表明,河八王相比其他甘蔗近緣屬植物具有更高的利用潛力,遺傳多樣性豐富,是一種具有極高生態(tài)和經(jīng)濟(jì)價(jià)值的生物質(zhì)資源。

        廣西地處中國(guó)地勢(shì)第二級(jí)階梯中的云貴高原東南邊緣,地勢(shì)由西北向東南傾斜,四周山地圍繞,呈盆地狀,也是中國(guó)降水量最豐富的地區(qū)之

        一,年降水量均在1070"mm以上,年均氣溫16.0~"23.0"℃[11-12],屬亞熱帶季風(fēng)氣候和熱帶季風(fēng)氣候,孕育了豐富的甘蔗野生種質(zhì)資源[13]。為探明廣西河八王種質(zhì)資源分布概況,豐富廣西甘蔗種質(zhì)資源圃的資源數(shù)量與遺傳多樣性,廣西農(nóng)業(yè)科學(xué)院甘蔗研究所組織考察隊(duì)在廣西開(kāi)展河八王種質(zhì)資源的系統(tǒng)調(diào)查與采集,對(duì)其主要表型性狀的相關(guān)性和遺傳多樣性進(jìn)行分析,以期挖掘到具有育種潛力的種質(zhì)材料,為甘蔗育種和遺傳改良提供優(yōu)異親本。

        1""材料與方法

        1.1""材料

        2016—2023年,廣西農(nóng)業(yè)科學(xué)院甘蔗研究所組織考察隊(duì)在廣西全區(qū)范圍內(nèi)14個(gè)地級(jí)市75個(gè)縣(市、區(qū))開(kāi)展甘蔗種質(zhì)資源系統(tǒng)調(diào)查與收集。資源采集方法:運(yùn)用GPS儀記錄采集資源的經(jīng)緯度、海拔等地理信息。在調(diào)查采集過(guò)程中,填寫(xiě)《甘蔗及其近緣屬野生種質(zhì)資源調(diào)查采集表》,包括采集日期、采集人、采集編號(hào)、種質(zhì)類型、采集地點(diǎn)、地理信息、種質(zhì)群落、伴生植物、土壤類型、物候期等信息。采集植株特性圖片,挖掘帶土的地下根莖,與帶采集編號(hào)的標(biāo)簽一起放入樣品袋。每隔2"d將樣品郵寄回廣西甘蔗種質(zhì)資源圃,并種植在野生資源保育水泥框(直徑×深度="70"cm×60"cm)內(nèi)。

        1.2""方法

        在河八王資源開(kāi)花期調(diào)查表型性狀,隨機(jī)選取5條測(cè)定其數(shù)量性狀和質(zhì)量性狀,測(cè)定方法參照《甘蔗種質(zhì)資源描述規(guī)范》[14]。6個(gè)數(shù)量性狀包括正1葉長(zhǎng)度、正1葉寬度、株高、節(jié)間長(zhǎng)度、莖徑、錘度。使用卷尺測(cè)量正1葉的葉長(zhǎng)和葉寬,節(jié)間長(zhǎng)度;使用塔尺測(cè)量株高;使用游標(biāo)卡尺測(cè)量莖徑;使用錘度計(jì)測(cè)量錘度。質(zhì)量性狀包括蒲心、空心、57號(hào)毛群、蠟粉帶、莖形等20個(gè)性狀。

        1.3""數(shù)據(jù)處理

        運(yùn)用Excel"2019軟件對(duì)調(diào)查數(shù)據(jù)進(jìn)行整理與分類。采用SPSS"26軟件對(duì)數(shù)量性狀進(jìn)行變異系數(shù)(CV)分析,描述6個(gè)數(shù)量性狀的離散程度,采用Shannon-Wiener多樣性指數(shù)(Shannon-"Wiener"diversity"index,"H′)進(jìn)行遺傳多樣性評(píng)價(jià),其計(jì)算公式H′=-ΣPiLnPi,式中Pi為某性狀第i個(gè)代碼值出現(xiàn)的頻率,Ln表示自然對(duì)數(shù)[15]。使用DPS"9.01軟件采用非加權(quán)配對(duì)算術(shù)平均法繪制聚類關(guān)系圖,并使用MEGA"11軟件對(duì)聚類關(guān)系圖進(jìn)行美化。

        2""結(jié)果與分析

        2.1""廣西河八王種質(zhì)資源地理分布概況

        經(jīng)考察和收集,在廣西賀州市富川瑤族自治縣、鐘山縣,柳州市鹿寨縣、融安縣、融水苗族自治縣、柳城縣,河池市環(huán)江毛南族自治縣、羅城仫佬族自治縣、金城江區(qū),桂林市永福縣、陽(yáng)朔縣、平樂(lè)縣、興安縣、全州縣,梧州市蒼梧縣,貴港市桂平市,來(lái)賓市忻城縣,百色市田東縣等18個(gè)縣(市、區(qū))43個(gè)鄉(xiāng)鎮(zhèn)采集到58份河八王種質(zhì)資源(表1)。地理水平分布表明,廣西河八王種質(zhì)資源主要分布在海拔60.0~602.5"m,北緯23°08′02″~26°01′43″,東經(jīng)107°08′01″~111°32′02″。采集地生態(tài)環(huán)境主要在沼澤地、公路旁、草地、田間(圖1)。在自然條件下,廣西河八王葉片存在一定程度的感病現(xiàn)象,主要為輪斑病、褐條病、眼點(diǎn)、葉焦和白疹等。

        2.2""廣西河八王種質(zhì)資源數(shù)量性狀的遺傳多樣性

        數(shù)量性狀分析結(jié)果顯示(表2),廣西河八王種質(zhì)資源的數(shù)量性狀存在較為豐富的遺傳變異。葉長(zhǎng)最高為145.20"cm,最低為68.00"cm,平均為110.15"cm;葉寬最高為4.40"cm,最低為0.65"cm,平均為1.51"cm;株高最高為298.00"cm,最低為

        61.00"cm,平均為153.81"cm;莖徑最高為1.28"cm,最低為0.12"cm,平均為0.68"cm;節(jié)間長(zhǎng)度最高為61.00"cm,最低為7.30"cm,平均為23.73"cm;錘度(Bx)最高為18.80%,最低為3.00%,平均11.38%。6個(gè)數(shù)量性狀的平均變異系數(shù)為34.8%,變異幅度為17.3%~53.6%,其中株高、葉寬、節(jié)間長(zhǎng)度、錘度具有較大的離散程度,節(jié)間長(zhǎng)度的變異系數(shù)最高(53.6%),葉長(zhǎng)的變異系數(shù)最低(17.3%)。結(jié)果表明,河八王群體數(shù)量性狀的遺傳變異主要來(lái)自于株高、葉寬、節(jié)間長(zhǎng)度和錘度,而葉長(zhǎng)和莖徑2個(gè)性狀相對(duì)穩(wěn)定。

        2.3""廣西河八王種質(zhì)資源質(zhì)量性狀的遺傳多樣性

        由表3可知,58份廣西河八王種質(zhì)資源質(zhì)量性狀的Shannon-Wiener多樣性指數(shù)在0~1.2044之間,平均值為0.5557。以曝光后節(jié)間顏色的多樣性最高(1.2044),多樣性較豐富;57號(hào)毛群(1.1752)、曝光前節(jié)間顏色(1.0264)、花序顏色(1.0160)、芽位(0.9820)、葉姿(0.9394)、蠟粉帶(0.7673)、蒲心(0.7520)、空心(0.6717)、芽溝(0.6150)等的多樣性中等;芽形、根點(diǎn)排列、生長(zhǎng)帶形狀、花序形狀、脫葉性、節(jié)間形狀和木栓的多樣性水平較低;莖形、氣根、水裂等3個(gè)性狀無(wú)多樣性體現(xiàn)??傮w而言,廣西河八王材料的類型主要為無(wú)氣根,莖形直立,無(wú)水裂,大部分材料表現(xiàn)為無(wú)木栓(98.3%),圓筒形節(jié)間(98.3%)、難脫葉(96.6%)、生長(zhǎng)帶不突出(86.2%),無(wú)根點(diǎn)(88.0%),無(wú)空心(60.3%),重度蒲心(75.9%),無(wú)蠟粉帶(50.0%),曝光前節(jié)間為黃色(46.6%),曝光后節(jié)間為黃綠色(58.6%)。芽形以三角形(86.2%)為主,上芽位(56.9%),無(wú)芽溝(81.1%)。葉姿挺直葉尖下垂(56.9%),花序形狀以圓錐形(91.4%)為主,顏色以淡紫(41.4%)和紫紅(48.3%)為主,部分材料未開(kāi)花。除部分材料無(wú)57號(hào)毛群外,其余多數(shù)材料都有,其中8.6%毛群少,51.7%毛群多,13.8%毛群較多。

        2.4""不同收集地區(qū)廣西河八王種質(zhì)資源的表型性狀遺傳差異

        2.4.1""質(zhì)量性狀的遺傳差異""對(duì)不同收集地區(qū)的廣西河八王種質(zhì)資源遺傳多樣性進(jìn)行比較發(fā)現(xiàn)(表4),除來(lái)賓、貴港、梧州的樣本量較小外,其余地區(qū)柳州河八王和賀州河八王以57號(hào)毛群的多樣性最高,桂林河八王以曝光后節(jié)間顏色的多樣性最高,河池河八王以蒲心的多樣性最高,百色河八王以空心、根點(diǎn)排列和葉姿的多樣性最高。而花序形狀僅在賀州河八王中存在多樣性,木栓僅在桂林河八王中存在多樣性。5個(gè)收集地區(qū)河八王平均多樣性指數(shù)在0.1040~0.4911之間,且以賀州的多樣性最大,百色的多樣性最小,其次依次為柳州(0.4668)gt;桂林(0.4405)gt;河池(0.3675)。

        2.4.2""數(shù)量性狀的遺傳差異""對(duì)不同采集地區(qū)廣西河八王種質(zhì)資源的6個(gè)數(shù)量性狀進(jìn)行比較可知(表5),桂林河八王平均株高(164.58"cm)和平均葉長(zhǎng)(117.18"cm)最大,平均葉寬(1.33"cm)最低;柳州河八王平均節(jié)間長(zhǎng)度(25.16"cm)最大,平均葉長(zhǎng)(101.45"cm)最低;河池河八王平均錘度(12.45%)最高;百色河八王平均葉寬(2.00"cm)最高,平均錘度(6.00%)和平均節(jié)間長(zhǎng)度(18.25"cm)最低。從不同收集地區(qū)6個(gè)數(shù)量性狀的變異系數(shù)來(lái)看,葉長(zhǎng)的變異系數(shù)以賀州(18.6%)的最大,桂林的(16.2%)最?。蝗~寬的變異系數(shù)以河池(52.0%)的最大,百色(14.1%)的最??;株高的變異系數(shù)以河池(41.9%)的最大,桂林(25.0%)的最小;莖徑的變異系數(shù)以河池(32.4%)的最大,賀州的最?。?5.5%);節(jié)間長(zhǎng)度的變異系數(shù)以柳州(63.5%)的最大,百色(29.1%)的最??;錘度的變異系數(shù)以百色(70.7%)的最大,河池的最?。?5.5%)。整體而言,桂林河八王的節(jié)間長(zhǎng)度具有較大的遺傳差異,葉長(zhǎng)的遺傳差異最低但平均葉長(zhǎng)最高;柳州河八王除葉長(zhǎng)外其余4個(gè)數(shù)量性狀平均值與桂林河八王差異不大,除錘度外,其他5個(gè)數(shù)量性狀的變異程度均比桂林河八王高;賀州河八王6個(gè)數(shù)量性狀平均值均處于中間水平,葉長(zhǎng)的遺傳差異最高;河池河八王株高較低,節(jié)間長(zhǎng)度變異系數(shù)大,但總體偏低;百色河八王錘度低但有較大的遺傳差異,葉片較寬但遺傳差異較小,節(jié)間較短且遺傳差異也較小。

        2.5""聚類分析

        基于6個(gè)數(shù)量性狀,對(duì)58份廣西河八王種質(zhì)資源進(jìn)行聚類分析(圖2)。結(jié)果顯示,58份廣西河八王材料之間的遺傳距離變幅為0.70~5.74,其中,2018HBW019與2018HBW020之間的遺傳距離最?。?.70),2016HBW010與2019HBW021之間的遺傳距離最大(5.74)。當(dāng)遺傳距離為3.44時(shí),58份廣西河八王材料被劃分為六大類群(表6)。第Ⅰ類群包含47份河八王材料,其中2份來(lái)自百色,1份來(lái)自貴港,12份來(lái)自桂林,14份來(lái)自河池,8份來(lái)自賀州,1份來(lái)自來(lái)賓,9份來(lái)自柳州。從類群特征上分析,第Ⅰ類群在全部類群中的節(jié)間長(zhǎng)度和葉長(zhǎng)相對(duì)較長(zhǎng),分別為24.69、109.10"cm。第Ⅱ類群僅包含1份來(lái)自柳州的河八王材料,第Ⅱ類群在全部類群中的株高和錘度最高,分別為254"cm和18.80%,葉寬相對(duì)較長(zhǎng),為2.22"cm。第Ⅲ類群包含7份河八王資源,均來(lái)自柳州,第Ⅲ類群在全部類群中節(jié)間長(zhǎng)度及錘度相對(duì)較高,分別為24.07"cm和12.06%,莖徑最細(xì),為0.57"cm。第Ⅳ、Ⅴ、Ⅵ類群均只包含1份河八王資源,其中第Ⅳ、Ⅴ類群的河八王資源來(lái)自柳州,第Ⅵ類群的來(lái)自梧州,第Ⅳ、Ⅴ類群在全部的河八王材料中莖徑最粗,為0.80"cm,第Ⅳ類群在全部的河八王材料中節(jié)間長(zhǎng)度最長(zhǎng),為30.00"cm,第Ⅴ類群在全部的河八王材料中葉長(zhǎng)最長(zhǎng),為136.00"cm,錘度最低,為8.80%,第Ⅵ類群在全部的河八王材料中葉寬最大,為4.40"cm,株高最低,為61.00"cm。聚類結(jié)果表明,材料的類群劃分與地理分布無(wú)明顯聯(lián)系,但也有少數(shù)來(lái)源相同的材料優(yōu)先聚在一起,如第Ⅲ類的7份材料均來(lái)自柳州。第Ⅱ、Ⅳ、Ⅴ、Ⅵ類群由于僅包含1份材料,參考價(jià)值低,對(duì)比第Ⅰ類群和第Ⅲ類群,除錘度外,第Ⅰ類群均高于第Ⅲ類群,綜合性狀較好,但其他四大類群材料在一些數(shù)量性狀上均有明顯的優(yōu)勢(shì),有一定的育種利用價(jià)值,可作為特殊材料進(jìn)行甘蔗育種。

        3""討論

        遺傳多樣性與環(huán)境多樣性共同決定了植物表型性狀多樣性,對(duì)表型性狀的研究可以從整體上了解研究對(duì)象的多樣性程度[16]。近年來(lái),育種進(jìn)程的加速使甘蔗雜交育種集中使用少數(shù)性狀優(yōu)良的親本,從而大大降低了甘蔗種質(zhì)基因的遺傳多樣性,導(dǎo)致新培育的甘蔗品種在有利性狀上的變異幅度降低,甚至可能已達(dá)到了某種程度的極限[17-19]。甘蔗種質(zhì)資源不僅是甘蔗原始科技創(chuàng)新和現(xiàn)代甘蔗種業(yè)發(fā)展的物質(zhì)基礎(chǔ),也是保障國(guó)家食糖安全、促進(jìn)西南地區(qū)農(nóng)民增收及支撐蔗糖產(chǎn)業(yè)可持續(xù)發(fā)展的戰(zhàn)略性資源[20]。調(diào)查和分析甘蔗種質(zhì)資源的表型性狀,既是種質(zhì)資源研究的首要工作,也是甘蔗育種的基礎(chǔ)性工作[21]。河八王屬包含2個(gè)種,金貓尾[Narenga"fallax"(Balansa)"Bor.]與河八王,此次收集的58份河八王資源分布在廣西8個(gè)地級(jí)市18個(gè)縣(市、區(qū))43個(gè)鄉(xiāng)鎮(zhèn),蔡澤霖等[13]在1979—1985年間調(diào)查廣西野生甘蔗資源,除桂林市外,其余地級(jí)市均采集到河八王種質(zhì)資源,在南寧、百色、欽州氣候適宜雨水充足地區(qū)生長(zhǎng)繁茂,而本次采集僅在賀州市、柳州市、河池市、桂林市、梧州市、貴港市、來(lái)賓市、百色市采集到河八王,原因可能是隨著時(shí)間的推移,人類活動(dòng)范圍增加導(dǎo)致部分河八王生境被破壞。多數(shù)河八王種質(zhì)資源生長(zhǎng)于路邊和農(nóng)田,這與吳建明等[22]的研究結(jié)果一致。杜衛(wèi)紅等[23]通過(guò)分析表明在眾多環(huán)境因素中海拔對(duì)河八王的生長(zhǎng)影響較大,海拔600"m范圍以內(nèi)適宜河八王生長(zhǎng)。本次考察采集的河八王種質(zhì)資源均來(lái)自海拔600"m范圍以內(nèi)地區(qū),與上述研究結(jié)果一致。58份廣西河八王種質(zhì)資源質(zhì)量性狀的Shannon-"Wiener多樣性指數(shù)在0~1.2044之間,6個(gè)數(shù)量性狀的平均變異系數(shù)為34.8%,變異幅度為17.3%~53.6%,表明具有豐富的遺傳多樣性,與劉昔輝等[7]的分析結(jié)果相近。

        本研究對(duì)廣西區(qū)內(nèi)不同采集地區(qū)的河八王種質(zhì)資源表型差異進(jìn)行比較表明,在柳州市采集的河八王材料大多屬于高大型,而在河池市采集的河八王材料多為矮小型;在賀州市采集的河八王材料質(zhì)量性狀多樣性豐富,在河池市采集的河八王材料數(shù)量性狀變異大。這與黃玉新等[24]對(duì)廣西斑茅的研究結(jié)果不同,原因可能是不同類型的野生甘蔗種質(zhì)資源適宜氣候和適宜分布范圍有差異,導(dǎo)致在不同地區(qū)采集的河八王資源在株高、錘度、莖徑等指標(biāo)上出現(xiàn)差異,產(chǎn)生不同程度的變異從而適應(yīng)不同的環(huán)境。本次采集的河八王種質(zhì)資源與徐超華等[25-26]在貴州省黔西南州及云南采集的甘蔗野生種質(zhì)資源相比,在節(jié)間長(zhǎng)度和錘度等性狀有較大的優(yōu)勢(shì),在葉長(zhǎng)、葉寬、株高、莖徑等性狀上各有優(yōu)勢(shì)。本次采集的河八王種質(zhì)資源6個(gè)數(shù)量性狀的平均變異系數(shù)為34.8%,變異幅度為17.3%~53.6%,與王春芳等[27]在云南、四川、江西、廣東、福建、海南、西藏等?。▍^(qū))采集的斑茅種質(zhì)資源相比,葉長(zhǎng)、葉寬、莖徑、節(jié)間長(zhǎng)度、錘度等5個(gè)數(shù)量性狀的變異系數(shù)更高,同時(shí)平均變異系數(shù)高于云南、四川、江西、廣東、海南、西藏等省份,表明本次采集的河八王種質(zhì)資源存在較豐富的遺傳多樣性。

        本研究的聚類結(jié)果表明,材料的劃分與地理來(lái)源無(wú)明顯的聯(lián)系,但也有少部分來(lái)源相同的材料優(yōu)先聚在一起,這與劉昔輝等[7]的研究結(jié)果不同,但與劉新龍等[28]的研究結(jié)果基本相同,原因在于本研究是基于河八王表型性狀數(shù)據(jù)進(jìn)行聚類分析,而劉昔輝等[7]是以AFLP標(biāo)記基因型數(shù)據(jù)進(jìn)行聚類分析,從而導(dǎo)致結(jié)果上的差異。另外,在河八王資源采集過(guò)程中,發(fā)現(xiàn)2018HBW019和2019HBW023兩份材料的錘度很高,分別達(dá)到了18.80%和18.50%,這在以往的河八王資源采集中很少見(jiàn)。本研究通過(guò)對(duì)采集到的河八王種質(zhì)資源進(jìn)行表型性狀評(píng)價(jià),已初步篩選出一批綜合性狀優(yōu)良、有育種價(jià)值的優(yōu)異資源,但尚未進(jìn)一步開(kāi)展分子水平和基因水平的優(yōu)異基因挖掘。

        隨著人類活動(dòng)愈發(fā)深入,全球氣候發(fā)生變化,許多野生資源的原生境遭到嚴(yán)重破壞,導(dǎo)致野生資源的分布范圍不斷變窄,因此,有必要在未采集的適生地開(kāi)展更大規(guī)模的收集工作[29-30]。本研究雖采集到廣西8個(gè)市的河八王材料,但各地區(qū)材料主要集中在少數(shù)幾個(gè)縣,且缺乏廣西另外6個(gè)地區(qū)(玉林市、崇左市、欽州市、南寧市、防城港市、北海市)的材料,因此,非常有必要加強(qiáng)對(duì)甘蔗種質(zhì)資源適生區(qū)、富集區(qū)的系統(tǒng)調(diào)查,并對(duì)多樣性豐富的區(qū)域進(jìn)行補(bǔ)充性采集,加快完成我國(guó)優(yōu)異野生甘蔗種質(zhì)資源的收集和保護(hù)工作。

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        [24]"黃玉新,"張保青,"高軼靜,"段維興,"周珊,"楊翠芳,"張革民,"王澤平."廣西斑茅表型性狀遺傳多樣性分析[J]."熱帶作物學(xué)報(bào),"2019,"40(9):"1706-1712."HUANG"Y"X,"ZHANG"B"Q,"GAO"Y"J,"DUAN"W"X,"ZHOU"S,"YANG"C"F,"ZHANG"G"M,"WANG"Z"P."Phenotypic"traits"and"genetic"diversity"of"Erianthus"arundinaceum"germplasm"from"Guangxi[J]."Chinese"Journal"of"Tropical"Crops,"2019,"40(9):"1706-1712."(in"Chinese)

        [25]"徐超華,"劉洪博,"覃偉,"毛鈞,"林秀琴,"陸鑫."貴州省黔西南州甘蔗野生種質(zhì)資源考察收集與表型性狀初步研究[J].熱帶作物學(xué)報(bào),"2023,"44(6):"1135-1145.XU"C"H,"LIU"H"B,"QI"W,"MAO"J,"LIN"X"Q,"LU"X."Investigation"and"phenotypic"traits"analysis"of"wild"sugarcane"germplasm"resource"in"southwest"Guizhou"autonomous"prefecture"of"China[J]."Chinese"Journal"of"Tropical"Crops,"2023,"44(6):"1135-1145."(in"Chinese)

        [26]"徐超華,"陳學(xué)寬,"毛鈞,"趙培方,"趙俊,"趙勇,"林秀琴,"孔春艷,"陸鑫."191份云南野生甘蔗種質(zhì)資源采集及遺傳多樣性分析[J]."南方農(nóng)業(yè)學(xué)報(bào),"2023,"54(11):"3125-3135.XU"C"H,"CHEN"X"K,"MAO"J,"ZHAO"P"F,"ZHAO"J,"ZHAO"Y,"LINnbsp;X"Q,"KONG"C"Y,"LU"X."Collection"and"genetic"diversity"analysis"of"191"wild"sugarcane"germplasm"resources"in"Yunnan[J]."Journal"of"Southern"Agriculture,"2023,"54(11):"3125-3135."(in"Chinese)

        [27]"王春芳,"余興華,"王先宏,"楊清輝."基于主要表型性狀的不同采集地斑茅種質(zhì)資源遺傳多樣性分析[J]."熱帶作物學(xué)報(bào),"2020,"41(6):"1108-1116.WANG"C"F,"YU"X"H,"WANG"X"H,"YANG"Q"H."Genetic"diversity"analysis"based"on"main"phenotypic"characteristics"of"Erianthus"arundinaceum"germplasm"from"different"regions[J]."Chinese"Journal"of"Tropical"Crops,"2020,"41(6):"1108-1116."(in"Chinese)

        [28]"劉新龍,"蘇火生,"應(yīng)雄美,"馬麗,"陸鑫,"劉洪博,"鄧祖湖."中國(guó)十倍體割手密資源的表型相關(guān)性及遺傳多樣性[J]."湖南農(nóng)業(yè)大學(xué)學(xué)報(bào)(自然科學(xué)版),"2012,"38(6):"574-579."LIU"X"L,"SU"H"S,"YING"X"M,"MA"L,"LU"X,"LIU"H"B,"DENG"Z"H."Phenotypic"correlation"and"genetic"diversity"of"decaploids"of"Saccharum"spontaneum[J]."Journal"of"Hunan"Agricultural"University"(Natural"Sciences)."2012,"38(6):"574-579."(in"Chinese)

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