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大麦黄矮病毒:对燕麦( Avena sativa )抗寒锻炼期间碳水化合物代谢的影响

Barley yellow dwarf virus: effects on carbohydrate metabolism in oat (Avena sativa) during cold hardening.

作者信息

Livingston D P, Gildow F E, Liu Shu-Yen

机构信息

USDA-ARS and Department of Crop Science, North Carolina State University, Raleigh, NC 27695-7629, USA.

To whom correspondence should be addressed. E-mail:

出版信息

New Phytol. 1998 Dec;140(4):699-707. doi: 10.1046/j.1469-8137.1998.00308.x.

Abstract

Barley yellow dwarf virus (BYDV) causes significant losses in yield and in overwintering ability of winter cereals. Mechanisms by which the physiology of plants is affected by the virus are not clear. To see how carbohydrates in the crown of winter cereals were affected by BYDV, fructan isomers of degree of polymerization (DP) 3-5, fructan DP>6 and the simple sugars, glucose, fructose and sucrose, were measured before and during cold hardening in three oat (Avena sativa L.) cultivars, 'Wintok', 'Coast Black' and 'Fulghum'. On a fresh weight basis fructan DP>6 decreased by 50% in infected 'Wintok' and 'Coast Black' and by 25% in 'Fulghum'. Two DP3, one DP4 and one DP5 isomer were significantly higher than non-infected controls. The percentages of simple sugars in infected crowns were significantly higher than controls in all three cultivars in every week except the first week of hardening. Crude enzyme extracts from BYDV infected plants incubated with sucrose suggested higher invertase and lower sucrose-sucrosyl transferase activity. When incubated with 1-kestose and neokestin, no significant difference was found in fructose fructosyl transferase or in hydrolase activity. The activity of unidentified enzymes catalysing the synthesis of larger (DP>5) fructan was altered by BYDV. The decrease of carbohydrates in the crown induced indirectly by BYDV may alter the plant's capacity to regenerate tillers in the spring. The ability of plants to prevent or tolerate carbohydrate fluctuations induced by BYDV infection may be an important genetically regulated characteristic for developing virus-resistant cultivars.

摘要

大麦黄矮病毒(BYDV)会导致冬季谷物的产量和越冬能力大幅下降。病毒影响植物生理的机制尚不清楚。为了探究BYDV对冬季谷物冠部碳水化合物的影响,我们在三个燕麦(Avena sativa L.)品种‘Wintok’、‘Coast Black’和‘Fulghum’的冷驯化前后,分别测定了聚合度(DP)为3 - 5的果聚糖异构体、DP>6的果聚糖以及单糖葡萄糖、果糖和蔗糖的含量。以鲜重计,感染病毒的‘Wintok’和‘Coast Black’中DP>6的果聚糖减少了50%,‘Fulghum’中减少了25%。两种DP3、一种DP4和一种DP5异构体显著高于未感染的对照。除冷驯化第一周外,在所有三个品种中,感染冠部的单糖百分比在每周都显著高于对照。用蔗糖孵育BYDV感染植物的粗酶提取物显示,转化酶活性较高,蔗糖 - 蔗糖基转移酶活性较低。用1 - 蔗果三糖和新蔗果四糖孵育时,果糖基转移酶或水解酶活性未发现显著差异。BYDV改变了催化合成更大(DP>5)果聚糖的未鉴定酶的活性。BYDV间接诱导的冠部碳水化合物减少可能会改变植物春季分蘖再生的能力。植物预防或耐受BYDV感染引起的碳水化合物波动的能力可能是培育抗病毒品种的一个重要的遗传调控特性。

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